Title :
8.9-Megapixel Video Image Sensor With 14-b Column-Parallel SA-ADC
Author :
Matsuo, Shinichiro ; Bales, Timothy J. ; Shoda, Masahiro ; Osawa, Shinji ; Kawamura, Katsuyuki ; Andersson, Anders ; Haque, Munirul ; Honda, Hidenari ; Almond, Bryan ; Mo, Yaowu ; Gleason, Jeffrey ; Chow, Tony ; Takayanagi, Isao
Author_Institution :
Aptina Japan, LLC, Tokyo, Japan
Abstract :
An 8.9-megapixel 60-frames/s video image sensor with a 14-b column-parallel analog-to-digital converter (ADC) has been developed. A gain amplifier, a 14-b successive approximation ADC (SA-ADC), and a new column digital processor are employed in each column. The SA-ADC has sufficient operation speed to convert the pixel reset and the pixel signal into digital data in a row operation cycle. The column digital processor receives bit serial data from the SA-ADC output and performs subtraction of the reset data from the signal data in order to reduce column fixed pattern noise (FPN). Column FPN is successfully reduced to 0.36 erms - by this digital-domain column FPN correction. Low-voltage low-power serial video interface and noise decoupling on pixel drive voltages contribute to row-temporal-noise reduction to 0.31 erms -. Both column FPN and row temporal noise are not visible in spite of a low readout noise floor of 2.8 erms -.
Keywords :
CMOS image sensors; analogue-digital conversion; video cameras; 14-b column-parallel SA-ADC; 8.9-megapixel video image sensor; analog-to-digital converter; bit serial data; digital processor; fixed pattern noise; gain amplifier; low-voltage low-power serial video interface; noise decoupling; pixel reset; pixel signal; readout noise; row operation cycle; temporal noise; Analog-digital conversion; CMOS image sensors; Cameras; Digital video broadcasting; High speed optical techniques; Image processing; Image resolution; Image sensors; Noise reduction; Optical sensors; CMOS image sensor; column-parallel processing; digital column processor; high resolution; high sensitivity; low readout noise; low structural noise; successive approximation analog-to-digital converter (SA-ADC);
Journal_Title :
Electron Devices, IEEE Transactions on
DOI :
10.1109/TED.2009.2030649